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Biomedical subjects

J D Bonagura

Publications and source records attributed to J D Bonagura.

At least 19 recordsLinked to original sources

Pharmacokinetics of the calcium-channel blocker diltiazem after a single intravenous dose in horses.

The pharmacokinetics of diltiazem were determined in eight healthy horses. Diltiazem HCl, 1 mg/kg i.v., was administered over 5 min. Venous blood samples were collected at regular intervals after administration. Plasma concentrations of diltiazem and desacetyldiltiazem were determined by high-performance liquid chromatography. A second, putative metabolite was detected, but could not be identified due to the lack of an authentic standard. Data were analyzed by nonlinear least-squares regression analysis. The median (minimum-maximum) peak plasma concentration of diltiazem was 727 (539-976) ng/mL. Plasma diltiazem concentration vs. time data were best described by a two-compartment model with first-order drug elimination. The distribution half-life was 12 (6-23) min, the terminal half-life was 93 (73-161) min, the mean residence time was 125 (99-206) min, total plasma clearance was 14.4 (10.4-18.6) mL/kg/min, and the volume of distribution at steady-state was 1.84 (1.46-2.51) L/kg. The normalized ratio of the area under the curve (AUC) of desacetyldiltiazem to the AUC of diltiazem was 0.088 (0.062-0.179). The disposition of diltiazem in horses was characterized by rapid distribution and elimination and a terminal half-life shorter than reported in humans and dogs. Because of the reported low pharmacologic activity, plasma diltiazem metabolite concentrations were not considered clinically important.

Animals↗

Sick sinus syndrome in nine West Highland white terriers.

Sick sinus syndrome is a clinical term used to describe the clinical signs of sinus node dysfunction. This paper describes the clinical data from nine West Highland white terriers, eight females and one male, in which a diagnosis of sick sinus syndrome was made. The most common clinical signs were episodic weakness and presyncope. Electrocardiographic findings included sinus bradycardia, sinus arrest with or without escape complexes, disturbances of atrioventricular conduction, paroxysmal supraventricular tachycardia, or some combination of these dysrhythmias. The main radiographic changes were mild right-sided cardiomegaly in five cases, and a slight increase in bronchial and interstitial markings in four, but there was no evidence of congestive heart failure in any of the dogs. Echocardiography revealed mild to moderate mitral endocardiosis in three cases with no other significant abnormalities. The dogs' responses to parenteral atropine were variable and were not necessarily related to their response to oral anticholinergic agents. Five of the dogs were initially treated with propantheline bromide, but in only two of them were the clinical signs controlled in the long term. Six of the dogs were successfully treated by the implantation of a transvenous pacemaker.

Animals↗

Ventricular septal defect in a blue duiker (Cephalophus monticola).

A 9-mo-old female blue duiker (Cephalophus monticola) weighing 3.9 kg was diagnosed with a cardiac murmur during quarantine examination. Evaluation of the heart by auscultation, electrocardiography, two-dimensional echocardiography, and Doppler color-flow echocardiography revealed a restrictive outlet ventricular septal defect with left atrial and left ventricular dilation. Trivial mitral, tricuspid, and aortic regurgitation was also noted. Though the duiker was clinically asymptomatic at the time of cardiac evaluation, it was found dead 1 wk later. The cause of death was not determined.

Animal Diseases↗

Heart murmurs, valvular regurgitation and electrical disturbances in copper-deficient genetically hypertensive, hypertrophic cardiomyopathic rats.

OBJECTIVE: Rats with a genetic tendency to develop hypertensive, hypertrophic cardiomyopathy were fed copper-deficient diets and their cardiac responses were investigated. METHODS: Five male weanling rats of the Long-Evans and SHHF/Mcc-fa(cp) strains were randomly selected to receive diets containing either adequate quantities of copper (94.5 micromol Cu/kg diet) or reduced quantities of copper (<15.8 micromol Cu/kg diet) for 6 weeks, (n=5 within each group). Echocardiograms and electrocardiograms were recorded and analyzed at the end of the 6-week interval. RESULTS: Electrocardiograms from copper deficient groups showed longer Q-T intervals and increased QRS amplitudes than controls. Both the copper deficient and control SHHF groups demonstrated significant QRS complex prolongation compared to Long-Evans rats. Echocardiography analysis showed significant increases in left ventricular area, free wall dimension, and myocardial cross-sectional areas in rats fed a copper deficient diet. The frequency of systolic cardiac murmurs increased in copper deficient rats and were related to the presence of valvular regurgitation as determined from echocardiography. DISCUSSION: However, the data do not suggest that a copper-deficient diet fed to a strain of rats genetically susceptible to heart disease later in life, hastens or worsens the onset of cardiac disease. The genetic predisposition and copper-deficient states exert independent effects upon the heart.

Animals↗

Doppler echocardiography. I. Pulsed-wave and continuous-wave examinations.

Doppler echocardiography is a specialized processing of cardiac ultrasound that is characterized by a continuously updated display of blood velocity during the cardiac cycle. Doppler examinations, which include color-coded Doppler echocardiography, pulsed-wave examination, and continuous-wave studies, are readily applicable to veterinary patients.

Animals↗

Doppler echocardiography. II. Color Doppler imaging.

Color Doppler imaging (CDI) is a sophisticated form of ultrasound technology that overlays blood flow and velocity information onto a B-mode, two-dimensional, gray-scale image. This imaging technique--also called color Doppler echocardiography, color-coded Doppler, Doppler color-flow imaging, and color-flow imaging--is a type of pulsed-wave Doppler echocardiography. Because the anatomical site of received Doppler-shift information can be readily determined, CDI is useful for documenting normal blood flow patterns and screening the heart and great vessels for areas of abnormal flow.

Animals↗

Acetylcholine is a vasodilator of porcine skeletal muscle arteries.

The purpose of this study was to test the hypothesis that porcine skeletal muscle arteries exhibit concentration-dependent vasodilation in response to acetylcholine (ACH) as observed in other mammals. We conducted three experiments. First, vasorelaxation responses to ACH were examined in isolated segments of femoral and brachial arteries, mounted on myographs and studied in vitro. Second, we determined whether resistance arteries from porcine skeletal muscle exhibit vasodilation in response to ACH by isolating second order arterioles (2-A) from the medial (MHT), deep-long (LOH) and lateral (LAT) heads of the triceps brachii muscles of four pigs. The rationale for selection of arterioles from these muscles was that these muscles represent muscles composed primarily of slow-oxidative, fast-oxidative-glycolytic, and fast-glycolytic muscle fiber types, respectively. 2-As were isolated and cannulated with micropipettes and intraluminal pressure set at 60 cm H2O. In both sets of in vitro experiments, we determined responses to an endothelium-independent dilator, sodium nitroprusside (10(-10)-10(-4) M), and to endothelium-dependent agents ACH (10(-10)-10(-4) M), and bradykinin (BK; 10(-11)-10(-6) M). Third, we used transcutaneous ultrasound imaging to measure changes in artery diameters and Doppler-principle measurements of blood flow velocities to estimate changes in total blood flow in the femoral vascular bed. Results reveal that ACH and BK produced similar vasorelaxation responses in femoral and brachial arteries and vasodilation of skeletal muscle 2-As. Also, ACH produced increases in blood flow and decreases in vascular resistance in the femoral vascular bed. These results indicate that the arterial tree of porcine skeletal muscle exhibits ACH-induced, endothelium-dependent vasodilation.

Acetylcholine↗

Pulsed wave Doppler echocardiography in normal horses.

Reference values were established for selected Doppler derived variables from a group of 40 normal Thoroughbred and Thoroughbred cross horses. Standard two-dimensional (2-D) images used for guiding the Doppler sampling site allowed accurate alignment with flow. Tricuspid inflow velocities during rapid filling (E) and atrial contraction (A) were significantly higher when recorded from a right parasternal angled view than from a right parasternal long-axis view. In 8 horses the tricuspid inflow peak A velocity was higher than the peak E velocity. The peak acceleration of blood flow was higher (P = 0.000) in the aorta (mean 8.01 m/s/s) than in the pulmonary artery (4.45 m/s/s). Significant differences were also noted in the pre-ejection period, ejection time and acceleration time between the 2 vessels. Horses with functional ejection murmurs had lower peak aortic acceleration and a longer acceleration time than horses without flow murmurs. Horses with filling murmurs over the left hemithorax had a significantly higher peak mitral E velocity than horses without such murmurs. Measurements from Doppler waveforms were repeatable and may prove useful in assessing ventricular function in this species.

Aging↗

Colour flow Doppler echocardiography in normal horses.

Colour flow Doppler echocardiography is a technique that is used with two-dimensional (2-D) echocardiography to study blood flow patterns in the heart and blood vessels. This method was used to define normal flow patterns and to evaluate valvular function in 40 clinically normal Thoroughbred and Thoroughbred cross horses. Flow patterns from 10 standardised echocardiographic images were described in relation to anatomic landmarks and timing during the cardiac cycle. Consistent intracardiac flow patterns were identified in the normal horses. High velocity flow signals or regurgitant jets were recorded at the tricuspid (77.5%), mitral (67.5%), aortic (47.5%) and pulmonary valves (40%) in clinically normal horses. Most of these signals were transient, and many were associated with valve closure. This study demonstrates that colour flow Doppler echocardiography is a sensitive technique for the detection of intracardiac flow in horses. It will provide a basis by which to compare studies in horses suspected of having valvular heart disease.

Animals↗

Colour flow Doppler echocardiography in horses with cardiac murmurs.

Thirty-two horses with cardiac murmurs typical of tricuspid, mitral and aortic regurgitation were studied using colour flow Doppler echocardiography. The dimensions and duration of any regurgitant signals, recorded at the cardiac valve suspected as being the site of origin of the murmur, were measured. Results were compared with flow signals described at the valves of normal horses (Blissitt and Bonagura 1995). Horses with murmurs suggestive of tricuspid (n = 8) and aortic (n = 8) regurgitation showed larger regurgitant signals at the tricuspid and aortic valves respectively, than has been reported in normal horses. Horses with murmurs suggestive of mitral regurgitation (n = 8) had a regurgitant signal of longer duration than occurs in normal horses, but the jets were not larger. Comparison of two groups of horses with low and high grade murmurs of tricuspid regurgitation, showed that horses with louder murmurs had significantly longer jets of larger area than those with low grade murmurs. This study demonstrates that colour flow Doppler echocardiography is a sensitive technique for the detection of valvular regurgitation in horses. However, quantification of jet size and duration are important for distinguishing physiological backflow which occurs in normal horses (Blissitt and Bonagura 1995) from valvular regurgitation associated with cardiac murmurs.

Animals↗

Cardiorespiratory effects of acepromazine maleate and buprenorphine hydrochloride in clinically normal dogs.

Cardiorespiratory effects of the combination of acepromazine maleate (ACP) and buprenorphine hydrochloride (BPN) were studied in 11 healthy, conscious dogs. Values for systemic and pulmonary artery blood pressure, cardiac output, arterial and venous pH and blood gas tensions, and invasive and noninvasive estimates of ventricular systolic function, preload, and afterload were obtained before sedation and after administration of each drug. Acepromazine maleate (0.1 mg/kg, IV) depressed cardiac function, compared with baseline values for unsedated dogs. Cardiac output decreased from a mean (+/- SD) value of 4.2 (+/- 1.5) L/min to 3.1 (+/- 0.8) L/min (P < 0.001), a change not attributed to heart rate. Pulmonary capillary wedge pressure decreased from 8.3 (+/- 4.2) mm of Hg to 6.5 (+/- 4.3) mm of Hg (P < 0.01), but mean right atrial pressure did not change. Left ventricular measurement of the maximal positive rate of pressure change (dP/dtmax) decreased from 2,668 (+/- 356)/mm of Hg/s to 2,145 (+/- 463) mm of Hg/s (P < 0.001), and ventricular stroke volume decreased from 43.2 (+/- 15.2) ml/beat to 32.3 (+/- 8.6) ml/beat. Noninvasive indices of left ventricular function, ventricular shortening fraction, peak aortic velocity, and aortic average acceleration were decreased after ACP administration, but were not statistically different from baseline values. Mean systemic arterial blood pressure decreased from 121 +/- 12 mm of Hg to 96 +/- 13 mm of Hg 15 minutes after ACP administration (P < 0.001). Total systemic vascular resistance was not significantly different from the baseline value.(ABSTRACT TRUNCATED AT 250 WORDS)

Acepromazine↗

Echocardiography.

Echocardiography encompasses a number of specific imaging techniques. The two-dimensional (2-D) echocardiogram is used to identify lesions of the heart and great vessels, assess myocardial function and provide a template for guiding contrast echocardiography, colour-coded Doppler echocardiography and spectral Doppler studies. M-mode echocardiography is used to measure cardiac size and ventricular function and can be combined with contrast or colour-coded Doppler studies for accurate timing of flow events. Pulsed wave and continuous wave Doppler echocardiography display the direction and velocity of red blood cells within the heart and circulation. Continuous wave Doppler studies are used to calculate pressure gradients in the circulation. Any of the Doppler techniques can be used to identify abnormal or high velocity flow responsible for pathologic heart murmurs. Each Doppler format is complementary to the others: colour-coded Doppler is used to screen large areas for flow disturbances; pulsed wave Doppler can pinpoint regions of abnormal flow; and continuous wave Doppler quantifies the maximal velocities of blood flow across cardiac lesions. Echocardiographic studies are very useful for the diagnosis and assessment of horses with cardiac murmurs, arrhythmias, and poor exercise performance. A number of cardiac disorders can be evaluated by echocardiography, including: cardiac malformation, valvular heart disease, cardiomyopathy, bacterial endocarditis, pericardial effusion, and congestive heart failure. When combined with a careful clinical examination, exercise evaluation and results of electrocardiography, the echocardiogram provides the best overall clinical assessment of the equine heart.

Animals↗

Chylothorax associated with right-sided heart failure in five cats.

Chylothorax associated with right-sided congestive heart failure was diagnosed in 5 cats. One cat had restrictive pericardial disease, with mild pericardial effusion, and a heart-base chemodectoma. Two other cats had congestive cardiac disease (tetralogy of Fallot and tricuspid regurgitation in 1 cat, and endocardial cushion defect and tricuspid dysplasia in the other), and 2 cats had idiopathic cardiomyopathy. All cats had jugular venous distention, and echocardiographic evaluation helped define the nature of the cardiac disease in these cats. Subtotal pericardiectomy resulted in resolution of the chylothorax in the cat with the heart-base tumor, whereas medical management of the right-sided heart failure temporarily decreased pleural effusion in the cat with tetralogy of Fallot and in the 2 cats with cardiomyopathy.

Animals↗

Comparison of transducer placement sites for Doppler echocardiography in dogs with subaortic stenosis.

Effects of transducer placement site and various operators on Doppler echocardiographic measures were evaluated in 12 dogs with subaortic stenosis. Dogs sedated by IV administration of acepromazine and buprenorphine were examined by 2 observers. Maximal aortic velocity and aortic velocity time integral were determined from Doppler aortic velocity spectra recorded, using a 1.9-MHz continuous wave nonimaging transducer placed at 3 echocardiographic sites: left ventricular apex (LA), suprasternal notch (SSN), and subcostal (SC). Doppler-estimated left ventricular-to-aortic pressure gradients were calculated from the traced velocity spectra by application of the modified Bernoulli equation. Each observer recorded high-quality Doppler spectral signals in all dogs from the SC and LA transducer sites and in 83% of dogs from the SSN window. Mean values for maximal aortic velocity and velocity time integral differed among sites (P < 0.05), but not between observers. Maximal velocity and velocity time integral measured from the SC transducer site were higher than those measured from the SSN or LA positions. Presumably, SC transducer placement provided the highest aortic velocities because of optimal alignment with aortic outflow. The maximal pressure gradient estimated from SC velocities exceeded SSN values by 27 mm of Hg and LA measurements by 38 mm of Hg. In this study, the optimal site for the Doppler echocardiographic detection of subaortic stenosis and assessment of this lesion's hemodynamic importance in most affected dogs was the SC position.

Analysis of Variance↗

Standardised imaging technique for guided M-mode and Doppler echocardiography in the horse.

Eighteen echocardiographic images useful for diagnostic imaging, M-mode echocardiography, and Doppler echocardiography of the equine heart were standardised by relating the position of the axial beam to various intracardiac landmarks. The transducer orientation required for each image was recorded in 14 adult horses by describing the degree of sector rotation and the orientation of the axial beam relative to the thorax. Repeatable images could be obtained within narrow limits of angulation and rotation for 14 of the 18 standardised images evaluated. Twenty-seven National Hunt horses were subsequently examined using this standardised technique. Selected cardiac dimensions were measured from two-dimensional and guided M-mode studies. Satisfactory results were achieved in 26 of the 27 horses. There was no linear correlation between any of the measured cardiac values and bodyweight. There was no significant difference between measurements taken from the left and the right hemithorax. Six horses were imaged on three consecutive days to assess the repeatability of the measurements. No significant difference was found between measurements obtained on different days. This study demonstrates a method for standardised echocardiographic evaluation of the equine heart that is repeatable, valuable for teaching techniques of equine echocardiography, applicable for diagnostic imaging and quantification of cardiac size, and useful for the evaluation of blood-flow patterns by Doppler ultrasound.

Animals↗

Clinical and electrocardiographic characterization of cattle with atrial premature complexes.

Atrial premature complexes (APC) were identified in 16 cows over a 2-year period. Fourteen cows had concurrent gastrointestinal disease. Variation in the intensity of the first heart sound and an occasionally irregular heart rhythm were evident during thoracic auscultation. Neither cardiac murmurs nor pulse deficits were detected in any cows, and clinical signs of heart failure were lacking. Three cows had APC immediately prior to or after development of atrial fibrillation. The heart rate when APC were diagnosed ranged from 48 to 124 beats/min (mean, 77 +/- 20 beats/min), and the APC frequency ranged from less than 1 to 23/min (mean 9.4 +/- 8.0). The P-wave morphologic characteristics in 4 cows with APC was abnormal. The coupling index of the APC varied between 0.44 and 0.95, with a mean of 0.73. Aberrant ventricular activation was usually associated with a short coupling interval (coupling index less than 0.60) and was observed in 3 cows. Ten cows were determined to be hypocalcemic and 4 cows hypokalemic when APC were identified. Atrial ectopic activity could not be detected in 12 cows after resolution of the concurrent gastrointestinal disorder or electrolyte abnormality. Atrial premature complexes may be a functional cardiac disorder in cattle, unrelated to structural heart disease. The potential for APC to progress to sustained atrial arrhythmias such as atrial fibrillation should be considered.

Animals↗